[0001] The present invention relates to an apparatus for monitoring an ignition lock and
doors and warning the vehicle operator if it appears that he may be leaving an ignition
key in the ignition lock while exiting the vehicle.
[0002] Many automotive vehicles provide the vehicle operator with an audible key chime to
remind him that the ignition key has been left in the ignition when his door is open.
In vehicles employing such a system, a mechanical contact physically touches the key
to determine if the key is still in the ignition lock.
[0003] One disadvantage of present implementations of key-in-ignition sensing is that the
mechanical contact employed has a high failure rate due to oxidation of the contacts.
Another disadvantage is the increased complexity of an ignition switch which incorporating
the mechanical key-in-ignition contact and its associated wiring.
[0004] Some vehicles have anti-theft systems using a transponder carried on a key to identify
that an unauthorised key has been placed in the ignition before allowing a vehicle
to start. One disadvantage of such systems is that if the engine does not start, the
operator does not know whether it is the engine or the anti-theft system that is malfunctioning.
[0005] It would therefore be desirable to eliminate the mechanical key-in-ignition mechanical
switch and still provide the function of a key-in-ignition warning system.
[0006] According to the present invention, there is provided a key-in-ignition reminder
apparatus for an automotive vehicle having at least one door comprising:
a key;
a transponder mounted in said key having an identification code;
an ignition lock for receiving said key;
an antenna located adjacent said ignition lock;
a door proximity switch connected to the door generating a door open signal when the
door is open;
a memory storing at least one identification code;
a door lock control;
a control module connected to said door lock control, said door proximity switch and
said memory, said control module energising said antenna coil, said antenna coil energising
said transponder, said transponder transmitting an identification code, said antenna
receiving said identification code, said control module generating a control signal
if said code from said transponder has a proper format and said door proximity switch
indicates the door is open;
indicator means connected to said control module for receiving said control signal
and generating an indication that said key is in said ignition lock.
[0007] Further according to the present invention, there is provided a method for reminding
an automotive vehicle operator that an ignition key for an ignition switch of an automotive
vehicle has been left within the ignition switch, said automotive vehicle having a
door with a proximity switch for indicating whether the door is open or closed, the
method comprising the steps of:
powering a control unit in response to opening the door;
inserting a key in said ignition lock;
energising an antenna located in close proximity to said ignition lock while said
door is open;
emitting an identification code from said key; and
generating feedback if said key code is in a proper format and said door remains open.
[0008] The key-in-ignition reminder system uses some existing hardware present in a vehicle
anti-theft system. One advantage of the present invention is that when the key-in-ignition
reminder system is incorporated into a vehicle having an anti-theft system, the operator
is able to distinguish the improper functioning of the anti-theft system from the
improper functioning of the engine, because the key chime will sound if a key having
a proper identification code is present.
[0009] Another advantage of the present invention is that since a door switch controls an
interrogation function of the key-in ignition system, there is no delay associated
with the anti-theft unit waiting to engage the vehicle to a start mode before engine
cranking. This improves the vehicle operator's perception of the system since there
is no delay in waiting for the interrogation system to stabilise before engine cranking.
[0010] The invention will now be described further, by way of example, with reference to
the accompanying drawings, in which:
FIG. 1 is a block diagram of the key-in-ignition system according to the present invention;
FIGS. 2a to 2d is a flowchart of the operation of the system.
[0011] Referring to Fig. 1, the central control module of the system is a CPU 10. CPU 10
may be either a dedicated CPU or more preferably a shared CPU with another function
such as an anti-theft system. CPU 10 is powered by a power source 11 which is preferably
a regulated derivative of the battery voltage of an automotive vehicle. CPU 10 is
connected to a memory 12 which stores at least one code which signifies a valid identification
code to operate the system. CPU 10 also includes a timer 14 which is preferably a
series of timers capable of timing several events simultaneously and independently.
[0012] CPU 10 has an input and output connected to antenna 16 and its associated transmitting
and receiving circuitry (not shown) which is placed in close proximity to ignition
lock 18. As shown, antenna 16 is placed around ignition lock 18. A key 20 cut to operate
ignition lock 18 has a transponder 22 mounted thereon which upon energisation by RF
coupling induction generates an RF identification code. CPU 10 generates an output
signal to antenna 16 which in turn transmits sufficient power to permit transponder
22 to generate a identification code in response thereto when transponder 22 is in
close proximity to antenna 16. Antenna 16 receives the identification code generated
by transponder 22 and transmits the information to CPU 10 for processing.
[0013] As shown these elements are part of a security system which, for example, is connected
to an electronic engine controller 24. In such a system, the received identification
code from transponder 22 is compared with the codes stored in memory 12. If a match
occurs, electronic engine controller 24 enables fuel pump 26, fuel injectors 28 and
ignition system 30 so that engine 32 operates. In such systems, the rotation of the
key in the ignition lock typically initiates interrogation of the transponder as described
above. The interrogation can also occur prior to the rotation of the key, e.g., during
the insertion of the key into the lock.
[0014] Other inputs to CPU 10 include a door proximity switch 34 and a passenger detection
device 36. Other outputs from CPU 10 are connected to a horn 38, a door lock control
40, and a key reminder chime 42.
[0015] Door proximity switch 34 is connected to at least one door preferably the driver
side door of an automotive vehicle. Door proximity switch 34 generates a signal in
response to whether the door of the automotive vehicle is open or closed.
[0016] Passenger detection device 36 is placed within the passenger compartment of the automotive
vehicle. Passenger detection device 36 may be a variety of detection devices such
as an infrared detector, microwave detector, optical sensor, or seat load detection
device. Passenger detection device 36 must be capable of reliably distinguishing the
presence of a passenger within the passenger compartment of the automotive vehicle
under the extreme conditions to which a vehicle is subject.
[0017] Horn 38 is preferably the horn existing in the automotive vehicle. CPU 10 has the
capability to control the sounding of horn 38 in a conventional manner directly or
through a relay or the like.
[0018] CPU 10 has the capability of controlling the locking and unlocking of the doors through
door lock control 40 by generating a lock control signal.
[0019] Chime 42 is a conventional chime typically found inside the passenger compartment
of many automobiles which is used to audibly alert the vehicle operator of such things
as the keys left in the ignition or headlights on. Although the chime is described
in terms of an audible chime, one skilled in the art would recognise a warning light
may also be included in conjunction with or in place of the audible chime.
[0020] As will be described in further detail below, the system generally operates as follows.
When the vehicle door is opened, the system constantly interrogates antenna 16 to
determine if a transponder on a key is present in ignition lock 18. The key chime
is sounded as long as the vehicle door is open and the key is in the ignition lock,
thus preventing the operator from locking the keys in the automotive vehicle. If the
vehicle operator inadvertently exits the vehicle and closes the door while leaving
the keys in the ignition lock, CPU 10 will sound horn 38 to alert the driver and then
unlock the door to allow the vehicle operator to retrieve the keys.
[0021] In operation, the preferred method of operating the key-in-ignition reminder system
is shown in FIGS. 2a through 2d. The system may be operated as a stand alone process
or as part of an interrupt routine used by a shared CPU. The key-in-ignition routine
starts in step 50. In step 52, the CPU monitors the state of the door proximity switch
or the door switch can be used to wake the CPU. If the door proximity switch indicates
the door is open, the key interrogation system is operated in step 53. By providing
sufficient power to energise a transponder, the CPU interrogates and waits for a response
from a transponder. If the transponder key code matches one stored in the memory of
the CPU, it is a valid transponder. In step 56, if the key has a valid transponder,
the key chime is turned on in step 58 to warn the driver not to leave his keys in
the vehicle. If the key does not have a valid transponder, the key chime is not started
as in step 60.
[0022] As optional steps, steps 54 and 55 are added after step 53. If any transponder having
code in the proper format is read in step 54, regardless of whether it is valid or
not, a key chime will sound in step 55. This option further delays the time it would
take to bypass the system by not indicating so readily whether a valid key is present.
[0023] The state of the door proximity switch is then again monitored in step 62. If the
door is open, a two minute timer is reset. The two minute timer as shown is optional
and is started if the door is closed and the key is in the ignition. The initialisation
of two minute timer is further described below.
[0024] A four minute timer will allow the key chime to operate for only four minutes as
a battery saving feature. This feature is optional and is useful if for example the
door proximity switch malfunctions or while servicing the vehicle. The status of four
minute timer is checked in step 66. If the four minute timer has not completed counting,
the system cycles back to step 56. If the four minute timer has completed counting,
i.e, the key chime has been on for four minutes, the key chime is turned off in step
68. The four minute timer is reset in step 70. The CPU is then placed in low power
mode 72 to conserve energy. The state of the door proximity switch is monitored in
step 74. If the door is open (i.e., remains open), step 74 will be repeated until
the door is closed. If the door is closed or the key is rotated in the ignition lock
the CPU will wake from low power mode and enter full operating state in step 76.
[0025] Referring back to step 62, if the door is not open the key chime is turned off in
step 78 and the four minute battery saving timer is reset in step 80.
[0026] In addition to the preceding key-in-ignition reminder system, the following steps
may be added to form an anti-lockout function. Step 82 again checks if there is a
valid transponder present. If a valid transponder is not present, step 84 checks if
a passenger is present within the vehicle. If a passenger is within the vehicle, the
status of the two minute timer is checked in step 86. If less than two minutes have
passed the sequence continues at step 62. If more than two minutes have been counted
by the two minute timer, the key interrogation system is turned off in step 88. If
no passenger is detected within the vehicle step 84, then the key interrogation system
is turned off in step 88.
[0027] Referring back to step 82, if a valid transponder was found then step 90 checks for
the presence of a passenger inside the vehicle. If a passenger is still in the vehicle,
step 86 is executed as described above. If no passenger is within the vehicle, the
vehicle doors are unlocked in step 92. This branch is performed if the operator has
left his keys in the ignition and he has locked the keys inside the vehicle. The horn
is sounded in step 94 and a five second timer is reset to zero in step 96.
[0028] At step 98 the system will wait until five seconds has elapsed in continuing with
the sequence. This gives the vehicle operator time to return to the vehicle and open
a door to retrieve the key. After the doors have been unlocked for five seconds, the
doors are re-locked in step 100 and the five second timer is reset in step 102. The
sequence continues in step 104 where the system pauses for another five seconds. It
is preferred that the lock/relock sequence is performed at least two or three times
to ensure adequate time for the vehicle operator to return to the vehicle and retrieve
his keys. In step 106, if the lock/relock sequence has been executed the desired amount
of times, step 88 is executed and the key interrogation system is powered off. If
in step 106, the desired number of lock/relock cycles have not been performed the
sequence is returned to step 62.
[0029] Various modifications will be apparent to those skilled in the art. For example,
various methods of powering the key interrogation system, the length of the timing
sequences, and the various feedback to the driver such as indicator lights and or
audible chimes can all be varied without deviating from the scope of the invention.
1. A key-in-ignition reminder apparatus for an automotive vehicle having at least one
door comprising:
a key (20);
a transponder (22) mounted in said key having an identification code;
an ignition lock (18) for receiving said key;
an antenna (16) located adjacent said ignition lock (18) ;
a door proximity switch (34) connected to the door generating a door open signal when
the door is open;
a memory (12) storing at least one identification code;
a door lock control (40);
a control module (10) connected to said door lock control (40), said door proximity
switch (34) and said memory (12), said control module (10) energising said antenna
(16), said antenna (16) energising said transponder (22), said transponder transmitting
an identification code, said antenna receiving said identification code, said control
module (10) generating a control signal if said code from said transponder (22) has
a proper format and said door proximity switch (34) indicates the door is open;
indicator means (38) connected to said control module (10) for receiving said control
signal and generating an indication that said key (20) is in said ignition lock (18).
2. A key-in-ignition reminder apparatus as claimed in Claim 1, wherein said proper format
is equivalent to an identification code stored in said memory.
3. A key-in-ignition reminder apparatus as claimed in Claim 1 further comprising a timer
connected to said control means, said control module generating said control signal
for a predetermined amount of time as counted by said timer.
4. A key-in-ignition reminder apparatus as claimed in Claim 1, wherein said automotive
vehicle having a passenger compartment and a lock on said door, said apparatus further
comprising a passenger detection means for detecting the presence of a passenger within
the passenger compartment of the automotive vehicle, a door lock controlled by said
control module and a timer means, said control module upon locking said door, having
said key in said ignition lock, said passenger detection means not detecting a person
in said passenger compartment, unlocking said door and locking said door after a predetermined
time as indicated by said timer.
5. A key-in-ignition reminder apparatus as claimed in Claim 5 further comprising a horn
wherein said control module sounds said horn upon unlocking said door.
6. A key-in-ignition reminder apparatus as claimed in Claim 5, wherein said passenger
detection means comprises a microwave detector.
7. A method for reminding an automotive vehicle operator that an ignition key for an
ignition switch of an automotive vehicle has been left within the ignition switch,
said automotive vehicle having a door with a proximity switch for indicating whether
the door is open or closed, the method comprising the steps of:
powering a control unit in response to opening the door;
inserting a key in said ignition lock;
energising an antenna located in close proximity to said ignition lock while said
door is open;
emitting an identification code from said key; and
generating feedback if said key code is in a proper format and said door remains open.
8. A method for reminding an automotive vehicle operator that an ignition key for an
ignition switch of an automotive vehicle has been left within the ignition switch,
said automotive vehicle having a door with a proximity switch for indicating whether
the door is open or closed, the method comprising the steps of:
powering a control unit in response to opening the door;
inserting a key in said ignition lock;
energising an antenna located in close proximity to said ignition lock while said
door is open through said control unit;
emitting an identification code from said key;
generating feedback if said key code is in the proper format and said door remains
open;
closing the door;
sensing whether a person is present within the vehicle;
if a person is not present in the vehicle and the doors are locked then;
generating feedback;
unlocking said door for a predetermined period; and
relocking said door if the door is not reopened within a predetermined time period.
9. A method as claimed in Claim 7 or 8, wherein said step of generating said proper format
is said key code stored within said memory.
10. A method as claimed in Claim 8, wherein said steps of unlocking and locking are repeated
three times.